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A subjective and objective evaluation of a codec for the electrical stimulation patterns of cochlear implants

, , , and . Journal of the Acoustic Society of America, (March 2021)

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Wavelet Packet Filterbank for Speech Processing Strategies in Cochlear Implants., , , and . ICASSP (5), page 121-124. IEEE, (2006)Conveying low frequency information through analog electrical stimulation in cochlear implants., and . EUSIPCO, page 509-513. IEEE, (2012)A subjective and objective evaluation of a codec for the electrical stimulation patterns of cochlear implants, , , and . Journal of the Acoustic Society of America, (March 2021)Predicting Speech Intelligibility using the Spike Acativity Mutual Information Index., and . INTERSPEECH, page 3503-3507. ISCA, (2022)A Psychoacoustic "NofM"-Type Speech Coding Strategy for Cochlear Implants., , , and . EURASIP J. Adv. Signal Process., 2005 (18): 3044-3059 (2005)Individualizing a monaural beamformer for cochlear implant users., , , , and . ICASSP, page 5738-5742. IEEE, (2015)Automatic speech recognition with a cochlear implant front-end., , , , and . INTERSPEECH, page 2537-2540. ISCA, (2007)A computational model to simulate spectral modulation and speech perception experiments of cochlear implant users., , and . Frontiers Neuroinformatics, (March 2023)An End-to-End Deep Learning Speech Coding and Denoising Strategy for Cochlear Implants., and . ICASSP, page 3109-3113. IEEE, (2022)Recurrence quantification analysis features for environmental sound recognition., , and . WASPAA, page 1-4. IEEE, (2013)